A comparative study on LQR and H∞ control for damping oscillations in power system network considering different operating points

N. R. Naguru, G. V. N. Yatendra Babu, V. Sarkar
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引用次数: 5

Abstract

This paper presents the comparative study on damping of oscillations in interconnected power system network considering multiple operating points using Linear Quadratic Regulator (LQR) and H∞ control techniques. The LQR control strategy is designed in such a way that the required states are to be known and H∞ control strategy is designed by using linear matrix inequality(LMI) approach. The control techniques are implemented for base case operating point and multiple operating points such as line outage, load change. Both controller performances are tested on the New England 39-bus 10-machine system in time domain and frequency domain by using MATLAB/Simulink environment. From the results it is observed that H∞ control design has shown promising results over the LQR design for different operating points. However, the LQR control design gives good results over the H∞ control design if the weights are increased to very high values.
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考虑不同工作点的电网阻尼振荡LQR与H∞控制的比较研究
本文采用线性二次型调节器(LQR)和H∞控制技术对考虑多工作点的互联电网的振荡阻尼进行了比较研究。LQR控制策略设计为已知所需状态,H∞控制策略采用线性矩阵不等式(LMI)方法设计。对基本工况工况点和线路停运、负荷变化等多工况点实施控制技术。在新英格兰39总线10机系统上,利用MATLAB/Simulink环境对两种控制器的时域和频域性能进行了测试。结果表明,对于不同的工作点,H∞控制设计比LQR设计显示出良好的效果。然而,如果权重增加到非常高的值,LQR控制设计比H∞控制设计具有更好的效果。
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